This paper presents the design and testing of a portable magnetic system combined with miniature inertial sensors for ambulatory 6 degrees of freedom ( DOF) human motion tracking. The magnetic system consists of three orthogonal coils, the source, fixed to the body and 3-D magnetic sensors, fixed to remote body segments, which measure the fields generated by the source. Based on the measured signals, a processor calculates the relative positions and orientations between source and sensor. Magnetic actuation requires a substantial amount of energy which limits the update rate with a set of batteries. Moreover, the magnetic field can easily be disturbed by ferromagnetic materials or other sources. Inertial sensors can be sampled at high rates...
This paper describes a complementary Kalman filter design to estimate orientation of human body segm...
Inertial and magnetic sensors are very suitable for ambulatory monitoring of human posture and movem...
Abstract—This paper describes a complementary Kalman filter design to estimate orientation of human ...
This paper presents the design and testing of a portable magnetic system combined with miniature ine...
This paper presents the design and testing of a portable magnetic system for human motion tracking. ...
Over the last years, inertial sensing has proven to be a suitable ambulatory alternative to traditio...
Over the last years, inertial sensing has proven to be a suitable ambulatory alternative to traditio...
This paper presents the design and testing of a portable magnetic system for human motion tracking. ...
Traditional human movement analysis systems consist of an optical position measurement system with o...
Movement and posture tracking of the human body is of great interest in many different disciplines s...
Movement and posture tracking of the human body is of great interest in many different disciplines s...
Recent advances in miniature sensors and mobile computing have fostered a dramatic growth of interes...
Recent advances in MEMS wearable inertial/magnetic sensors and mobile computing have fostered a dram...
This paper describes a Kalman filter design to estimate orientation of human body segments by fusing...
This paper describes a Kalman filter design to estimate orientation of human body segments by fusing...
This paper describes a complementary Kalman filter design to estimate orientation of human body segm...
Inertial and magnetic sensors are very suitable for ambulatory monitoring of human posture and movem...
Abstract—This paper describes a complementary Kalman filter design to estimate orientation of human ...
This paper presents the design and testing of a portable magnetic system combined with miniature ine...
This paper presents the design and testing of a portable magnetic system for human motion tracking. ...
Over the last years, inertial sensing has proven to be a suitable ambulatory alternative to traditio...
Over the last years, inertial sensing has proven to be a suitable ambulatory alternative to traditio...
This paper presents the design and testing of a portable magnetic system for human motion tracking. ...
Traditional human movement analysis systems consist of an optical position measurement system with o...
Movement and posture tracking of the human body is of great interest in many different disciplines s...
Movement and posture tracking of the human body is of great interest in many different disciplines s...
Recent advances in miniature sensors and mobile computing have fostered a dramatic growth of interes...
Recent advances in MEMS wearable inertial/magnetic sensors and mobile computing have fostered a dram...
This paper describes a Kalman filter design to estimate orientation of human body segments by fusing...
This paper describes a Kalman filter design to estimate orientation of human body segments by fusing...
This paper describes a complementary Kalman filter design to estimate orientation of human body segm...
Inertial and magnetic sensors are very suitable for ambulatory monitoring of human posture and movem...
Abstract—This paper describes a complementary Kalman filter design to estimate orientation of human ...